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3D transient heat conduction in multilayer systems - Experimental validation of semi-analytical solution

机译:多层系统中的3D瞬态热传导-半解析溶液的实验验证

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摘要

This article presents an experimental validation of a semi-analytical solution for transient heat conduction in multilayer systems. The semi-analytical solution is obtained using the heat conduction equation Green's functions in the frequency domain. These solutions are obtained after time and spatial Fourier transforms are then applied in the two horizontal directions when the space domain has no kind of discretization. The problem is recast in the time domain by means of inverse Fourier transforms, using complex frequencies to avoid aliasing. The multilayer system used in the experimental validation is built by superimposing layers of different materials whose thermal properties were previously estimated experimentally. The external surfaces of the full system are then subjected to heat variation. The generated variation of the temperature field across the multilayer system was recorded using thermocouples. The full system was also simulated using the semi-analytical solution. Comparison of the results showed that the semi-analytical solution agrees with the experimental one.
机译:本文介绍了多层系统中瞬态热传导的半解析解的实验验证。使用频域中的热传导方程格林函数获得半解析解。这些解决方案是在时间上获得的,并且当空间域没有离散化时,可以在两个水平方向上应用空间傅立叶变换。通过逆傅立叶变换在时域中重现该问题,并使用复杂的频率以避免混叠。在实验验证中使用的多层系统是通过叠加不同材料的层构建而成的,这些材料的热性能先前已通过实验进行了估算。然后,整个系统的外表面都会受到热的影响。使用热电偶记录了整个多层系统温度场的变化。还使用半解析解对整个系统进行了仿真。结果比较表明,该半解析解与实验吻合。

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